Dynamic buckling of laminated composite stringer stiffened CFRP panels under axial compression

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Abstract

In this work, the dynamic buckling of stiffened panels is evolved numerically through a nonlinear incremental expression through making use of a specific time integration procedure via the finite element software program. the buckling and post-buckling behaviours of hat-stringer-stiffened composite curved panel under axial compression load.Dynamic buckling is extracted from the curve abandoning the very last shortening as a characteristic of time while the shape is subjected with the aid of a square compression pulse movement carried out inside the axial direction. The duration of the heart beat and the amplitude of curvature of decreasing of the cloth inside the band tormented by the warmth, the dynamic buckling motion, are constant. The method approach was proposed to predict the dynamic buckling load of curved panel. Finite element analysis was used to investigate these tests and the FE models were performed by ABAQUS.Approach to determine the reliability of the stiffened panel in dynamic buckling state.

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Ouadia, M., Abdellatif, K., Boubel, H., Elmrabet, O., Rougui, M., Echebba, E. M., & El Bouhmidi, A. (2018). Dynamic buckling of laminated composite stringer stiffened CFRP panels under axial compression. In MATEC Web of Conferences (Vol. 149). EDP Sciences. https://doi.org/10.1051/matecconf/201714901044

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